2000-2021年土耳其马尔马拉地区星载气溶胶光学深度时空变化综合分析

P. Ettehadi Osgouei, S. Kaya
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引用次数: 0

摘要

摘要本研究调查了土耳其马尔马拉地区大气中气溶胶光学深度(AOD)的时空变化。利用了2000年至2021年期间MODIS MAIAC AOD数据的长期卫星观测。通过研究马尔马拉地区AOD的时间变化,可以观察到AOD在春季(5月)和夏季(8月)达到峰值,而在冬季观察到较低的AOD值。具体而言,在8月至12月期间,月平均AOD显著下降,这主要是由于通过清除降水清除大气中的颗粒物。研究结果表明,马尔马拉地区每月AOD变化的年际变化主要受撒哈拉沙漠临时沙尘输送的影响,与22年平均AOD在冬末和早春的偏差最大。高AOD值的季节空间变化分析结果表明,高AOD面积在夏季最大,约占总面积的54%,其次是春季(45%)和秋季(26%)。冬季HVA最低,占总面积的17%。HVA的季节性百分比率是由大气条件和气溶胶来源造成的。夏季HVA较大的原因是农业实践和生物质残留物燃烧的增加,再加上高吸湿效果和高温。供暖比排放是秋冬季节高AOD地区人为排放的主要来源,气溶胶集中在城市化中心和工业化区。
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A COMPREHENSIVE ANALYSIS OF THE SPATIO-TEMPORAL VARIATION OF SATELLITE-BASED AEROSOL OPTICAL DEPTH IN MARMARA REGION OF TURKIYE DURING 2000–2021
Abstract. This study investigates the spatiotemporal variability of the aerosol optical depth (AOD) in the atmosphere over the Marmara region, Turkiye. Long-term satellite observations from MODIS MAIAC AOD data spanning the period from 2000 to 2021 are utilized. Examining the temporal variations in AOD in the Marmara region, it is observed that AOD reaches its peak during spring (May) and summer (August) months, while lower AOD values are observed in winter. Specifically, between August and December, there is a significant decline in monthly mean AOD which is majorly due to particulate removal from the atmosphere via precipitation scavenging. The findings reveal that the inter-annual variability of monthly AOD variations in the Marmara region is primarily influenced by temporary Saharan dust transportation with highest deviations from 22 year averaged AOD in late winters and early springs. The findings from the analysis of seasonal spatial variation of high AOD values revealed that the high AOD area is largest in the summer with about 54% of the total area and then spring (45%) and autumn (26%). Winter has the lowest HVA with 17% of the total area. The seasonal percentage rates of HVA are due to atmospheric conditions and aerosol sources. Larger HVA in summer is due to the increase of farming practices and biomass residue burnings combined with high moisture absorption effects and high temperature. The heating-specific emissions are the main source of anthropogenic emissions over the high AOD areas during the autumn and winter and aerosols are concentrated over the urbanized centres and industrialized zones.
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CiteScore
1.70
自引率
0.00%
发文量
949
审稿时长
16 weeks
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